An inexact two-stage fuzzy-stochastic programming model for water resources management

被引:85
作者
Lu, H. W. [1 ]
Huang, G. H. [1 ]
Zeng, G. M. [2 ]
Maqsood, I. [3 ]
He, L. [1 ]
机构
[1] Univ Regina, Fac Engn, EVSE, Regina, SK S4S 0A2, Canada
[2] Hunan Univ, Coll Environm Sci & Engn, Changsha 410082, Peoples R China
[3] Saskatchewan Environm, Environm Protect, Regina, SK S4S 5W6, Canada
关键词
decision-making; environment; interval; management; optimization; fuzzy; water resource; stochastic; two-stage; uncertainty;
D O I
10.1007/s11269-007-9206-8
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
An inexact two-stage fuzzy-stochastic programming (ITFSP) method is developed for water resources management under uncertainty. Fuzzy sets theory is introduced to represent various punishment policies under different water availability conditions. As an extension of conventional two-stage stochastic programming (TSP) method, two special characteristics of the proposed approach make it unique compared with existing approaches. One is it could handle flexible penalty rates, which are much reasonable for both of the authorities and users, and have seldom been considered in the TSP framework. The other is uncertain information expressed as discrete intervals and probability distribution functions can be effectively reflected in the optimization processes and solutions. After formulating the model, a hypothetical case is employed for demonstrating its applicability under two scenarios, where the inflow is divided into four and eight intervals, respectively. The results indicate that reasonable solutions have been obtained. They provide desired allocation patterns with maximized system benefit under two feasibility levels. The solutions present as stable intervals with different risk levels in violating the water demands, and can be used for generating decision alternatives. Comparisons of the solution from the ITFSP with that from the ITSP (inexact two-stage stochastic programming) and TSP approach are also undertaken. It shows that the ITFSP could produce more system benefit than existing methods and deal with flexible penalty policies for better water management and utilization.
引用
收藏
页码:991 / 1016
页数:26
相关论文
共 21 条
[1]   A model for optimal allocation of water to competing demands [J].
Babel, MS ;
Das Gupta, A ;
Nayak, DK .
WATER RESOURCES MANAGEMENT, 2005, 19 (06) :693-712
[2]   A MULTICUT ALGORITHM FOR 2-STAGE STOCHASTIC LINEAR-PROGRAMS [J].
BIRGE, JR ;
LOUVEAUX, FV .
EUROPEAN JOURNAL OF OPERATIONAL RESEARCH, 1988, 34 (03) :384-392
[3]   BOUNDS FOR 2-STAGE STOCHASTIC PROGRAMS WITH FIXED RECOURSE [J].
EDIRISINGHE, NCP ;
ZIEMBA, WT .
MATHEMATICS OF OPERATIONS RESEARCH, 1994, 19 (02) :292-313
[4]  
EIGER G, 1991, ENG OPTIMIZ, V17, P293, DOI DOI 10.1080/03052159108941077
[5]   A fuzzy stochastic dynamic Nash game analysis of policies for managing water allocation in a reservoir system [J].
Ganji, A. ;
Khalili, D. ;
Karamouz, M. ;
Ponnambalam, K. ;
Javan, M. .
WATER RESOURCES MANAGEMENT, 2008, 22 (01) :51-66
[6]   A GRAY FUZZY LINEAR-PROGRAMMING APPROACH FOR MUNICIPAL SOLID-WASTE MANAGEMENT PLANNING UNDER UNCERTAINTY [J].
HUANG, GH ;
BAETZ, BW ;
PATRY, GG .
CIVIL ENGINEERING SYSTEMS, 1993, 10 (02) :123-146
[7]   A hybrid inexact-stochastic water management model [J].
Huang, GH .
EUROPEAN JOURNAL OF OPERATIONAL RESEARCH, 1998, 107 (01) :137-158
[8]   An inexact two-stage stochastic programming model for water resources management under uncertainty [J].
Huang, GH ;
Loucks, DP .
CIVIL ENGINEERING AND ENVIRONMENTAL SYSTEMS, 2000, 17 (02) :95-118
[9]   Robust optimization under softness in a fuzzy linear programming problem [J].
Inuiguchi, M ;
Sakawa, M .
INTERNATIONAL JOURNAL OF APPROXIMATE REASONING, 1998, 18 (1-2) :21-34
[10]  
Loucks D., 1981, WATER RESOURCE SYSTE